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首页> 外文期刊>Environmental earth sciences >Shoreline change rate and erosion risk assessment along the Trou Aux Biches-Mont Choisy beach on the northwest coast of Mauritius using GIS-DSAS technique
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Shoreline change rate and erosion risk assessment along the Trou Aux Biches-Mont Choisy beach on the northwest coast of Mauritius using GIS-DSAS technique

机译:基于GIS-DSAS技术的毛里求斯西北海岸Trou Aux Biches-Mont Choisy海滩海岸线变化率和侵蚀风险评估

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The present study investigates the rate of shoreline change and erosion risk along the Trou aux Biches-Mont Choisy beach in the northwest coast of Mauritius using digital shoreline analysis system (DSAS). In this analysis, the long-term shoreline change rate and coastal erosion and accretion pattern are estimated along the coastal stretch using multi-temporal aerial photographs and high resolution satellite images for the past 45 years (1967-2012). The shoreline change rate and erosion/accretion pattern at each transects are estimated by five statistical parameters functionalized in DSAS 4.5 software such as end point rate (EPR), shoreline change envelop (SCE), net shoreline movement (NSM), linear regression rate (LRR), and least median of squares (LMS). The measurement of shoreline change rate and coastal erosion and accretion pattern has been described for three segments namely (1) North-North-West (NNW) to South-South-East (SSE); (2) North-East (NE) to South-West (SW); (3) North-North-East (NNE) to South-South-West (SSW) based on the coastal configuration. The analysis reveals that the severe erosion risk (-1.75 to -0.03 m/year) was noticed between transects 41 and 61 in NE-SW segments and moderate erosion risk (-1.09 to -0.18 m/year) between transects 62 and 95 of the NNE-SSW segments. The NNW-SSE segment shows low erosion risk with an EPR value of -0.55 to -0.05 m/year. The values of shoreline change rate of these transects indicate the occurrence of severe erosion along the coastal area over the periods of 1967-2012. However, the coastal segment in NNW-SSE configuration faces least erosion rate and the protective coral reefs reduce the wave energy action which leads to the formation of sustainable coast in the area. Moreover, poor set back and management activities with reference to high energetic waves, storm surge and cyclonic conditions produce direct impacts on the coastal morphology and degradation of coral reef ecosystem. The shoreline change studies through integrated remote sensing and GIS technology is considered of paramount importance for accurately focusing on planning, management and coastal intervention in long-term purpose.
机译:本研究使用数字海岸线分析系统(DSAS)调查了毛里求斯西北海岸Trou aux Biches-Mont Choisy海滩沿岸的海岸线变化率和侵蚀风险。在此分析中,使用过去45年(1967-2012年)的多时相航空照片和高分辨率卫星图像,估算了沿海岸带的长期海岸线变化率以及海岸侵蚀和增生模式。通过DSAS 4.5软件中功能化的五个统计参数(例如终点率(EPR),海岸线变化包络(SCE),净海岸线运动(NSM),线性回归率(),估算每个样点的海岸线变化率和侵蚀/积聚模式) LRR),以及最小二乘中位数(LMS)。已经描述了三个部分的海岸线变化率和海岸侵蚀与增生模式的测量:(1)西北-西北(NNW)至南-东南(SSE); (2)东北(NE)至西南(SW); (3)基于沿海地区的构造,从东北到东北(NNE)到西南(SSW)。分析显示,NE-SW段的41号和61号之间存在严重的侵蚀风险(-1.75至-0.03 m /年),而62号和95号之间的中度侵蚀风险(-1.09至-0.18 m /年)被发现。 NNE-SSW细分市场。 NNW-SSE段显示出低侵蚀风险,EPR值为-0.55至-0.05 m / year。这些样带的海岸线变化率的值表明在1967-2012年期间沿海地区发生了严重的侵蚀。但是,NNW-SSE构造的海岸段面临的侵蚀速率最小,并且保护性珊瑚礁减少了波能作用,从而导致该地区形成可持续的海岸。此外,与高能波,风暴潮和气旋条件有关的退步和管理活动不力,直接影响了沿海形态和珊瑚礁生态系统的退化。人们认为,通过综合遥感和GIS技术进行的海岸线变化研究对于长期准确地专注于计划,管理和海岸干预至关重要。

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